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Adsorption behaviour of Cr(VI) onto macro and micro-vesicular volcanic rocks from water

机译:水中六价铬在宏观和微泡火山岩上的吸附行为

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摘要

Adsorption by volcanic rocks is investigated as a possible alternative to the conventional method of Cr(VI) removal from polluted waters. In this work, adsorption of Cr(VI) onto pumice (VPum) and scoria (VSco) has been studied by using a batch method at room temperature. The following factors affecting sorption of Cr(VI) were investigated: solution pH, contact time, type and size of adsorbents, adsorbent dose and initial metal ion concentration. The maximum adsorption yield, 77% for VSco and 80% for VPum, was obtained at low pH of about 2. The applicability of the Langmuir as well as Freundlich adsorption isotherms for the present system is tested. The batch sorption kinetics has been mathematically described using the Lagergren pseudo-first order, pseudo-second order equations and equations for intra-particle and liquid film diffusion. For both VPum and VSco, the entire kinetic data fitted well with pseudo-second-order reaction rate model. In the case of VSco, the rate constant was the highest (338 x 10~(-3) kg mg~(-1) h~(-1)) and the VPum gave the lowest (7 x 10~(-3) kgmg~(-1) h~(-1)). The experimental results inferred that electrostatic attraction and surface complexation are the major adsorption mechanisms for binding Cr(VI) ions to the macro and micro-vesicular volcanic rocks. The two volcanic rocks tested have potential for an inexpensive and suitable method for removal of Cr(VI) from polluted waters.
机译:火山岩的吸附被研究为从污染水中去除六价铬的常规方法的一种可能替代方法。在这项工作中,已通过在室温下使用分批方法研究了六价铬在浮石(VPum)和氧化渣(VSco)上的吸附。研究了影响Cr(VI)吸附的以下因素:溶液pH,接触时间,吸附剂的类型和大小,吸附剂剂量和初始金属离子浓度。在约2的低pH值下可获得最大吸附率(VSco为77%,VPum为80%)。测试了Langmuir以及Freundlich吸附等温线在本系统中的适用性。使用Lagergren拟一阶,拟二阶方程以及颗粒内和液膜扩散方程,对批吸附动力学进行了数学描述。对于VPum和VSco,整个动力学数据与伪二级反应速率模型非常吻合。在VSco的情况下,速率常数最高(338 x 10〜(-3)kg mg〜(-1)h〜(-1)),而VPum最低(7 x 10〜(-3) kgmg〜(-1)h〜(-1))。实验结果表明,静电吸引和表面络合是将Cr(VI)离子与大,微泡火山岩结合的主要吸附机理。测试的两个火山岩具有潜在的廉价和合适的方法从污染水中去除Cr(VI)的潜力。

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